鹽基吸附 的英文怎麼說

中文拼音 [yán]
鹽基吸附 英文
base adsorption
  • : 名詞1. (食鹽; 鹽類) salt 2. (姓氏) a surname
  • : 動詞1 (把液體、氣體等引入體內) inhale; breathe in; draw 2 (吸收) absorb; suck up 3 (吸引) a...
  • : Ⅰ動詞1 (附帶) attach; add; enclose 2 (靠近) get close to; be near 3 (依從; 依附) agree to; ...
  1. Through the analyzing the macro - structure to micro - structure, the author considers that retarding mechanism of citric acid is that citric acid and ca in the gypsum form the complexant ion, and hinder the crystallization center of dihydrate crystal bigger ; that of sodium tripolyphosphate is that it combined with ca, hinders the dissolve of hemihydrate. formation and growth of crystallization center ; that of bone glue is the glue - protection and chemical absorption action of active group, which also retards the formation and growth of crystallization center

    通過宏觀到微觀的分析,筆者認為,檸檬酸的緩凝作用的原因主要在於檸檬酸與鈣形成絡合離子,影響了二水石膏晶體的晶核長大過程;多聚磷酸鈉與鈣形成某種復,對于石膏晶體的溶解、成核和長大過程均有強烈的阻礙影響;骨膠則在於膠體對半水石膏的包裹和活性團的化學,使二水石膏晶體的成核和長大困難。
  2. Study on corrosion inhibition and absorbing thermodynamics of hexamethylenetetramine on brass in hydrochloric acid solution

    酸溶液中六次甲四胺對黃銅的緩蝕作用及熱力學研究
  3. The three fungi also differed in base exchange capacity, with paxillus involutus having the highest base exchange capacity and suillus bovinus the lowest

    供試的三種菌根真菌的菌絲都具較大的代換量值,因而具有較強重金屬潛力。
  4. The results showed that the base exchange capacity of the three ectomycorrhizal fungi was much higher than cation exchange capacity of plant roots, indicating that the fungi may have great potential to adsorb heavy metals

    菌根真菌耐重金屬的能力與真菌重金屬的能力有關,因而需要了解菌根真菌對重金屬和固持的特性。真菌的能力在一定程度上受真菌代換量影響,因此測定二種真菌的代換量。
  5. The purpose of the pre - treatments is to improve surface characteristics of the organism in relation to their metal adsorbing mechanism. we used cacla in the base of ion - exchange mechnism. we use aas and icp for elementsdetermination

    藻類的預處理是於海藻生物的機理對藻類進行酸堿處理或無機活化等,本實驗中我們選擇了用cacl2進行無機活化,測定方法採用了原子收與原子發射兩種。
  6. Adsorption of pb, zn and cd among the three fungi differed appreciably and was largely influenced by the form of available n in the substrate

    在測定菌根真菌代換量的礎上,研究了不同真菌對重金屬pb 、 zn和cd的和固持能力。
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